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首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >Influence of surface treatment with infrared nanosecond laser on adhesion performance of adhesion-bonded carbon fiber/epoxy composite
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Influence of surface treatment with infrared nanosecond laser on adhesion performance of adhesion-bonded carbon fiber/epoxy composite

机译:红外纳秒激光对粘合粘结碳纤维/环氧复合材料粘附性能的影响

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摘要

The surface treatment of carbon fiber/epoxy composites with a pulsed infrared (1064 nm wavelength) nanosecond (7 ns pulse duration) laser has been investigated. It is found that single 1064 nm laser pulse can remove the polymer matrix from composite surface to expose the carbon fibers by expansion of the pyrolysis gas resulting from laser-induced polymer degradation. The influences of laser power density and scan strategy on matrix removal process have been studied. The bonding strength of laser processed, adhesion-bonded CFRP (carbon fiber reinforced plastic) increase with lower matrix residues on the fibers and a linear relation is found. The adhesion-bonding strength of CFRP surfaces, tested by lap-joint shear test, exceeds the strength measured for untreated and abrasion treated (SiC paper) samples. The main origin of fiber damage of the laser-treated surface is mechanical fracture rather than thermal damage as found by laser scanning confocal microscope and scanning electron microscope. The characteristic morphologies and failure modes of shear-tested surfaces are analyzed. The obvious improvement of adhesive strength is achieved by the laser-treated surfaces attributed to matrix removal and carbon fibers protruding. A 1 D model is established to describe temperature and internal gas pressure of the irradiated surface. The new laser treatment method needs less laser energy and low pulse numbers and prove the way to an efficient, low-cost surface treatment for preparation of high quality adhesion bonded CFRP components.
机译:已经研究了具有脉冲红外(1064nm波长)纳秒(7ns脉冲持续时间)激光的碳纤维/环氧复合材料的表面处理。发现单个1064nm激光脉冲可以通过复合表面除去聚合物基质,通过激光诱导的聚合物降解导致的热解气体来暴露碳纤维。研究了激光功率密度和扫描策略对基质去除过程的影响。发现激光加工的粘合强度,粘合粘合的CFRP(碳纤维增强塑料)与纤维上的下基质残留物增加和线性关系。 CFRP表面的粘合强度通过旋隙关节剪切试验测试,超过了未处理和磨损处理(SIC纸)样品的强度。激光处理表面的纤维损伤的主要起源是机械骨折而不是通过激光扫描共聚焦显微镜和扫描电子显微镜发现的热损伤。分析了剪切测试表面的特征形态和故障模式。通过归因于矩阵去除和碳纤维突出的激光处理表面的显而易见的粘合强度的改善。建立1d模型以描述照射表面的温度和内部气体压力。新的激光处理方法需要较少的激光能量和低脉冲数,并证明一种高效,低成本的表面处理方法,用于制备高质量的粘合CFRP组分。

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